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基因组测序和人工诱变技术的进展为棉花育种提供了新途径。

Advances in genome sequencing and artificially induced mutation provides new avenues for cotton breeding.

作者信息

Wang Peilin, Abbas Mubashir, He Jianhan, Zhou Lili, Cheng Hongmei, Guo Huiming

机构信息

Nanfan Research Institute, Chinese Academy of Agricultural Sciences (CAAS), Sanya, Hainan, China.

Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Front Plant Sci. 2024 Jul 2;15:1400201. doi: 10.3389/fpls.2024.1400201. eCollection 2024.

Abstract

Cotton production faces challenges in fluctuating environmental conditions due to limited genetic variation in cultivated cotton species. To enhance the genetic diversity crucial for this primary fiber crop, it is essential to augment current germplasm resources. High-throughput sequencing has significantly impacted cotton functional genomics, enabling the creation of diverse mutant libraries and the identification of mutant functional genes and new germplasm resources. Artificial mutation, established through physical or chemical methods, stands as a highly efficient strategy to enrich cotton germplasm resources, yielding stable and high-quality raw materials. In this paper, we discuss the good foundation laid by high-throughput sequencing of cotton genome for mutant identification and functional genome, and focus on the construction methods of mutant libraries and diverse sequencing strategies based on mutants. In addition, the important functional genes identified by the cotton mutant library have greatly enriched the germplasm resources and promoted the development of functional genomes. Finally, an innovative strategy for constructing a cotton CRISPR mutant library was proposed, and the possibility of high-throughput screening of cotton mutants based on a UAV phenotyping platform was discussed. The aim of this review was to expand cotton germplasm resources, mine functional genes, and develop adaptable materials in a variety of complex environments.

摘要

由于栽培棉种的遗传变异有限,棉花生产在波动的环境条件下面临挑战。为了增强这种主要纤维作物至关重要的遗传多样性,增加当前的种质资源至关重要。高通量测序对棉花功能基因组学产生了重大影响,使得能够创建多样的突变体文库,并鉴定突变体功能基因和新的种质资源。通过物理或化学方法建立的人工诱变是丰富棉花种质资源的高效策略,可产生稳定且高质量的原材料。本文讨论了棉花基因组高通量测序为突变体鉴定和功能基因组学奠定的良好基础,并着重介绍了突变体文库的构建方法以及基于突变体的多样测序策略。此外,棉花突变体文库鉴定出的重要功能基因极大地丰富了种质资源,并推动了功能基因组学的发展。最后,提出了构建棉花CRISPR突变体文库的创新策略,并讨论了基于无人机表型平台对棉花突变体进行高通量筛选的可能性。本综述的目的是在各种复杂环境中扩展棉花种质资源、挖掘功能基因并培育适应性材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/180e/11250495/64ffc94ce805/fpls-15-1400201-g001.jpg

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